AutoCAD (Mechanical) Certification Program
Join our AutoCAD (Mechanical) Certification Program and enhance your design skills!
Program rating
1,713+
Learners enrolled
40 hrs
Total duration
English,Hindi
Language
This program includes
Program overview
About this program
This Engineering program blends live, mentor-led sessions with hands-on projects and real-world case studies, so you build genuinely job-ready skills — not just theory. You'll learn from working industry experts, apply what you learn on practical assignments, and finish with a portfolio, a recognized certificate, and dedicated placement support to help you land the right role.
Join our AutoCAD (Mechanical) Certification Program and enhance your design skills!
This comprehensive 40-hour course is designed for aspiring mechanical engineers and drafters looking to master AutoCAD software. Learn the essentials of mechanical design and drafting, and get certified in AutoCAD to advance your career.
Why learners love this program
- Hands-on, project-based learning with real-world mechanical drafting assignments and a capstone project to build a professional portfolio.
- Instructor-led sessions and structured exam preparation with practice tests aligned to AutoCAD certification requirements.
- Comprehensive coverage of mechanical design tools (2D/3D modeling, parametric constraints, layers, BOMs) plus access to software labs and learning resources.
20
Lectures
40
Hours
All level
Level
Globally trusted accreditations
Recognitions that power your profile
Trusted by leading accreditation bodies — so your certificate is respected by employers worldwide.
Learning outcomes
What you'll be able to do
Curriculum
Structured modules that build real skills
16 modules · designed for progressive, hands-on learning.
Interface Overview
Identify the main components of the AutoCAD interface and explain their purposes. Become comfortable navigating ribbons, toolbars, command line, and model/layout tabs.
Workspace Customization
Customize workspaces and tool palettes to improve drawing efficiency. Save and switch between workspace configurations for different drafting tasks.
File Management and Templates
Manage drawing files, understand DWG vs DWT templates, and set up project folders. Create and use templates to standardize drawing settings and styles.
Creating Lines and Polylines
Use line and polyline commands to create accurate basic geometry. Apply object snaps and coordinate entry methods for precision.
Drawing Circles, Arcs and Ellipses
Create circular and elliptical geometry using various creation methods. Modify and connect curved geometry with precision.
Units, Limits and Scale
Set up drawing units, limits, and scale to match project requirements. Understand model space versus paper space scaling conventions.
Grid, Snap and Coordinate Systems
Configure grid and snap settings and work with Cartesian and polar coordinates. Use UCS to orient drawings for complex layouts.
Drawing Templates and Layer Standards
Implement templates with predefined units, layers, and styles for consistency. Apply basic company or project layer standards in a template.
Object Snaps and Tracking
Employ object snaps, tracking, and temporary tracking points to ensure geometric accuracy. Combine snap modes for efficient construction.
Ortho, Polar and Direct Entry Techniques
Use ortho and polar modes along with direct coordinate entry for controlled drawing. Recognize when to apply each technique for faster drafting.
Modify Commands (Trim, Extend, Offset)
Use core modify commands to edit geometry precisely and efficiently. Combine commands to refine drawings and correct errors.
Stretch, Fillet and Chamfer
Apply advanced modify tools to adjust geometry and detail transitions. Use stretch, fillet, and chamfer for part detailing and cleanup.
Measure and Inquiry Tools
Utilize measurement and inquiry tools to verify distances, areas, and object properties. Interpret measurement results to ensure drawing correctness.
Blocks and Dynamic Blocks
Create and insert blocks to reuse standard geometry and reduce file size. Build dynamic blocks with parameters to increase flexibility in designs.
External References and Xrefs
Attach and manage external references to coordinate multi-discipline or multi-file projects. Control visibility, paths, and binding of Xrefs.
Creating Linear and Aligned Dimensions
Add linear and aligned dimensions to convey size and location accurately. Configure dimension styles for consistency with standards.
Angular and Radial Dimensions
Apply angular, radial, and diameter dimensions for curved and angular features. Adjust dimension placement and settings for clarity.
Dimension Styles and Tolerances
Set up and manage dimension styles including text, arrows, and units. Incorporate tolerance and precision settings appropriate for mechanical parts.
Text Styles and Multiline Text
Create and apply text styles and multiline text for notes and callouts. Ensure legibility and adherence to drafting standards.
Leaders, Tables and Tags
Insert leaders, tables, and attribute tags to document parts and assemblies. Use tables to organize bill-of-materials and part lists effectively.
Creating and Organizing Layers
Create logical layer structures to separate geometry types and disciplines. Assign colors, linetypes, and lineweights to improve readability.
Layer Filters and Layer States
Use layer filters and layer states to manage complex drawings and switching contexts quickly. Save and restore layer configurations for different views.
Layer Best Practices for Mechanical Drawings
Apply layer naming and usage conventions specific to mechanical drafting. Implement layer strategies that facilitate manufacturing and review workflows.
Work with Lineweights and Linetypes
Control lineweights and linetypes for clear presentation of mechanical drawings. Configure plotting settings to reflect intended output quality.
Visibility Tools and Viewports
Manage object visibility using layer visibility, freezes, and viewports. Set up multiple viewports for coordinated model and layout presentation.
3D Coordinate Systems and UCS in 3D
Understand 3D coordinate systems and use the UCS to orient modeling work. Switch between world and user coordinate systems for 3D construction.
Basic 3D Primitives and Modeling Concepts
Create and manipulate basic 3D primitives such as boxes, spheres, and cylinders. Grasp the differences between wireframe, surface, and solid modeling.
Viewing and Navigation in 3D
Navigate 3D space using orbit, pan, zoom, and visual styles. Set up isometric views and named views for consistent model inspection.
Solid Modeling: Extrude, Revolve, Sweep
Use extrusion, revolution, and sweep operations to create complex solid geometry. Combine primitives and features to build parts.
Boolean Operations and Editing Solids
Apply union, subtract, and intersect operations to modify solids. Use solid editing tools to refine and prepare parts for assembly.
Parametric Sketching for Parts
Create constrained sketches that define part profiles and ensure dimensional intent. Use constraints and parameters to control geometry behavior.
Feature-Based Part Modeling
Build parts using feature sequences like holes, fillets, and patterns to match mechanical design requirements. Recognize feature order impact on model rebuild.
Applying Material and Mass Properties
Assign materials and calculate mass properties to validate mechanical designs. Interpret center of gravity and volume metrics for part assessment.
Creating Detailed Part Drawings
Generate orthographic views, sections, and detail views from models for manufacturing. Apply appropriate dimensioning and tolerancing practices in details.
Assembly Views and Exploded Representations
Produce assembly drawings with component balloons and exploded views to communicate assembly sequence. Prepare bill-of-materials and parts lists for assemblies.
Plotting and Print Setup
Configure plot styles, paper sizes, and scale for accurate printed output. Create layouts and manage viewports for presentation sheets.
Exporting to DWG, PDF and Other Formats
Export drawings to common formats for sharing and manufacturing, including PDF and DXF. Understand export settings that affect fidelity and compatibility.
Collaboration Tools and Revision Control
Use Xrefs, cloud services, and versioning practices to collaborate effectively. Implement revision control workflows to track drawing changes.
Mechanical Drafting Best Practices
Apply industry best practices for clarity, consistency, and manufacturability in mechanical drawings. Review checklist items to ensure drawings meet standards.
Course Review and Certification Preparation
Summarize core concepts from the course and focus on common exam topics and problem types. Practice exam strategies and review sample certification questions.
Your credential
The certificate you'll earn
Earn an industry-recognized certificate on successful completion of this program.
Personalised guidance
Book a free discovery call with our specialists
Get tailored advice on learning paths, certification journeys, and industry opportunities before you enroll.
- Understand the skill gaps holding you back and the modules that close them.
- Get a cohort recommendation based on availability and your weekly bandwidth.
- Discover certification add-ons that strengthen your CV.
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Reviews
What our learners say
The AutoCAD (Mechanical) course was very effective and career-oriented. The trainer explained both basic and advanced tools clearly. The assignments and mock projects helped me improve my design skills.
I really enjoyed the AutoCAD (Mechanical) course. The trainer explained drafting, modeling, and design layouts step by step. The projects during the AutoCAD course gave me confidence to work on industry-related tasks.
The AutoCAD (Mechanical) course was very detailed and structured. The trainer explained each command clearly and guided us through real-time examples. The hands-on practice made me confident in applying the skills.
I found the AutoCAD (Mechanical) course very comprehensive and career-focused. The trainer covered both 2D drafting and 3D design with clarity. The projects during the course gave me hands-on experience in mechanical design.
The AutoCAD (Mechanical) course helped me build strong technical skills. The trainer explained tools, commands, and layouts step by step. The assignments in this AutoCAD course were very effective in improving my drafting speed and accuracy...
The AutoCAD (Mechanical) course was very practical and easy to follow. The trainer explained drafting, dimensioning, and 3D modeling in detail. The live practice sessions during the AutoCAD course gave me confidence to create professional d...
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Honored for excellence
Awards & recognitions
Our pedagogy, learner outcomes, and mentor network have been acknowledged by industry councils and global forums.
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